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生化试剂
酶和辅酶
酶
辅酶
酶底物
胶原酶
食品和乳品检测用酶和辅酶
诊断试剂用酶和辅酶
蛋白质
植物源蛋白质
动物源蛋白质
蛋白质-重组蛋白
多肽
底物肽
激素肽与神经肽
多肽药物递送
药物肽
β淀粉样肽与微管蛋白肽
抗微生物肽
细胞黏附肽
化妆品肽
标记肽
肽表位
胶原蛋白肽分子量分布
大豆肽分子量分布
其它多肽
碳水化合物
单糖
二糖
寡糖
多糖
环糊精
纤维素
淀粉
氨基酸
20种天然氨基酸
FMOC保护氨基酸
BOC保护氨基酸
CBZ保护氨基酸
维生素
维生素
抗生素
抗生素
色素类
染料
指示剂
分离试剂
离子交换树脂
大孔吸附树脂
凝胶过滤填料
亲和层析填料
疏水层析填料
缓冲剂
缓冲剂
动物激素
动物激素
表面活性剂
阳离子表面活性剂
阴离子表面活性剂
非离子表面活性剂
两性离子表面活性剂
聚合物类
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
聚乙烯亚胺(PEI)
聚乳酸(PL)
聚乙烯醇(PVA)
脂肪酸系列
脂肪酸系列-有机酸
短链脂肪酸
中链脂肪酸
长链脂肪酸
反式脂肪酸
磷脂类
血制品
全血
红细胞
血制品-血清
血浆
溶血活性实验
其他生化试剂
其他生化试剂
抗体
抗体蛋白
抗体类
标准品
中药标准品
黄酮及类黄酮
生物碱
甾体及甾体皂苷类
花青素类
醌类
酚类
糖类
标准品-维生素
标准品-有机酸
化学标准品
化学标准品
对照药材
对照药材
标准溶液
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其他标准溶液
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氮标记
氧标记
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其它
有证标准物质
溯源标准品
溯源标准品
食品检测
农残标品
兽残标品
抗氧化剂
食品检测-防腐剂
食品检测-着色剂
护色剂
营养强化剂
增味剂
甜味剂
食品用香料
食品检测-真菌毒素
食品检测-激素
食品检测-脂肪酸
药品检测
化药检测
中药及中成药检测
环境检测
大气
土质、土壤
水质
固废
化妆品检测
增白剂
化妆品检测激素
化妆品检测防腐剂
防晒剂
化妆品检测着色剂
饲料检测
饲料检测-真菌毒素
饲料检测-激素
饲料检测-维生素
饲料检测-脂肪酸
农残
饲料检测-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信号通路
代谢
G蛋白偶联受体
神经科学
细胞凋亡
表观遗传
蛋白酪氨酸激酶
微生物学
血管生成
细胞周期
离子通道
免疫与炎症
DNA 损伤和修复
自噬
细胞骨架
干细胞
PI3K/Akt/mTOR 信号通路
蛋白酶体
MAPK 信号通路
JAK/STAT 信号通路
内分泌与激素
其他
化合物库
抑制剂库
激酶抑制剂库
FDA批准的药物库
天然产物库
生物活性化合物库
酪氨酸激酶抑制剂库
表观遗传学化合物库
干细胞信号化合物库
GPCR化合物库
剑桥癌症化合物库
蛋白酶抑制剂库
自噬化合物库
离子通道配体库
PI3K_Akt抑制剂库
抗糖尿病化合物库
抗癌化合物库
抗感染化合物库
凋亡化合物库
MAPK抑制剂库
高选择性抑制剂库
代谢化合物库
靶点筛选
靶点筛选
蛋白&免疫
重组蛋白
重组蛋白-重组蛋白
蛋白提取和纯化
蛋白提取和纯化-裂解液
蛋白提取试剂盒
蛋白检测
蛋白定量
蛋白定性
蛋白检测-蛋白染色
蛋白电泳&Western blot
WB-裂解液
蛋白Marker
凝胶制备试剂盒
蛋白上样缓冲液
WB-电泳缓冲液
封闭液
漂洗液
显影液
蛋白预制胶
免疫检测
免疫检测
免疫组化
组织制备
抗原修复液
组织封闭
抗体稀释
显色与复染
特异性染色
封片剂
免疫其他相关试剂
免疫其他相关试剂
蛋白其他相关试剂
蛋白其他相关试剂
细胞生物学
感受态细胞
表达感受态细胞
克隆感受态细胞
酵母感受态细胞
发根农杆菌感受态细胞
根癌农杆菌感受态细胞
其他感受态细胞
细胞培养
基础培养基
无血清培养基
平衡盐溶液
细胞培养-血清
细胞生长因子
污染物清除剂
细胞冻存
细胞消化液
细胞分离
细胞裂解
分离液
免疫磁珠
酶抑制剂
细胞检测
细胞检测-细胞染色
细胞增殖与分化
细胞凋亡与自噬
细胞转染
细胞转染
抗生素溶液
抗生素溶液
其它细胞相关
其它细胞相关
分子生物学
核酸提取和纯化
核酸提取和纯化-裂解液
提取试剂盒
核酸电泳
DNA Marker
核酸电泳-电泳缓冲液
琼脂糖
凝胶加样缓冲液
核酸染料
核酸染料
PCR相关
聚合酶
扩增缓冲液
PCR Master Mix
三磷酸脱氧核糖核苷酸
核酸其他相关试剂
核酸其他相关试剂
染色液
HE染色
HE染色
微生物染色
微生物染色
植物染色
染色液-植物染色
骨组织染色
骨组织染色
结缔组织染色
结缔组织染色
碳水化合物染色
碳水化合物染色
金属及盐染色
金属及盐染色
脂类染色
脂类染色
神经染色
神经染色
色素染色
色素染色
酶类染色
酶类染色
细胞染色
染色液-细胞染色
蛋白染色
染色液-蛋白染色
核酸染色
核酸染色
其他染色液
其他染色液
常规溶液
人工模拟液
胃液
肠液
体液
汗液
唾液
血液
脑脊液
尿液
胆汁
缓冲液
PBS缓冲液
Tris-HCl缓冲液
柠檬酸盐缓冲液
pH标准缓冲液
HEPES缓冲液
硼酸盐缓冲液
乙酸钠缓冲液
Tris-EDTA缓冲液
MOPS缓冲液
甘氨酸缓冲液
其他缓冲液
指示剂
酸碱指示剂
金属指示剂
沉淀滴定指示剂
固定液
戊二醛固定液
多聚甲醛固定液
环保组织固定液
其它固定液
其他常规溶液
其他常规溶液
检测试剂盒
氧化应激系列
氧化应激系列
ASA-GSH循环系列
ASA-GSH循环系列
土壤酶系列
土壤酶系列
氮代谢系列
氮代谢系列
碳水化合物系列
碳水化合物系列
光合作用系列
光合作用系列
细胞壁代谢系列
细胞壁代谢系列
脂肪酸系列
脂肪酸系列
苯丙烷代谢系列
苯丙烷代谢系列
脯氨酸代谢系列
脯氨酸代谢系列
医学基础代谢系列
医学基础代谢系列
呼吸与能量代谢途径
呼吸与能量代谢途径
三羧酸循环系列
三羧酸循环系列
糖酵解系列
糖酵解系列
糖异生途径
糖异生途径
磷酸戊糖途径
磷酸戊糖途径
其他检测试剂盒
其他检测试剂盒
化学类
砌块
含氟砌块
卤代杂环
杂环砌块
有机砌块
配体
Buchwald 配体
手性配体
NHC配体及配合物
膦配体
催化剂
手性催化剂
有机催化剂
光催化剂
过渡金属催化剂
交叉偶联催化剂
加氢催化剂
烯烃复分解置换
Buchwald催化剂
无机催化剂
C-H活化催化剂
化学合成
手性助剂
有机金属试剂
硼酸及其衍生物
格氏试剂
有机硅试剂
离子液体
C-C键形成试剂
偶联试剂
卤化试剂
氧化剂
保护和脱保护试剂
还原剂
香精香料
实验室化学品
苛性碱和碱
酸
卡尔费休试剂
色谱和光谱试剂
衍生化试剂
溶剂
仪器分析试剂
金属
盐
分析色谱
材料科学
能源材料
燃料电池催化剂
电池材料
燃料电池膜与材料
硫族化物 (硫属化物)
氧化物与陶瓷
高纯盐
高纯金属及合金
量子点
溶液和气相沉积前驱体
太阳能材料
电子材料
磁性材料
无机和金属纳米材料
碳纳米材料(碳纳米管、石墨烯和富勒烯)
液晶
OFET和OPV材料
OLED和PLED材料
光子和光学材料
印刷电子材料
基板和预制电子器件
特种与智能聚合物
硅材料
电子化学品和蚀刻剂
自组装和接触印刷
生物医学材料
生物医用高分子
亲水性高分子
疏水性高分子
聚乙二醇修饰剂 (PEGs和PEOs)
3D生物打印
聚合单体
聚合物微球和纳米粒子
动物造模试剂
神经系统造模
癫痫模型
精神分裂症模型
脑水肿模型
帕金森模型
呼吸系统造模
呼吸系统造模
皮肤相关造模
皮肤相关造模
耳鼻喉头颈外造模
耳鼻喉头颈外造模
泌尿系统造模
泌尿系统造模
免疫系统造模
免疫系统造模
内分泌系统造模
内分泌系统造模
生殖系统造模
生殖系统造模
消化系统造模
消化系统造模
循环系统造模
循环系统造模
眼科相关造模
眼科相关造模
运动系统造模
运动系统造模
植物应用
植物培养&遗传转化
植物凝胶
MS培养基
组培培养基
植物营养液
遗传转化试剂
培养基组分
植物流式试剂
植物组分及细胞器提取
酵母杂交&异源互补
完全培养基/Rich Media
缺陷培养基基础/Minial Media Base
缺陷氨基酸混合物(DO)
缺陷培养基(SD/SC)
酵母杂交套装
杂交试剂盒
转化与鉴定
核酸蛋白提取
毕赤酵母蛋白表达
酿酒酵母表达
裂殖酵母培养
酵母衍生实验
酵母表面展示
植物检测试剂盒
植物检测试剂盒-植物染色
植物检测试剂盒-光合作用系列
植物代谢物检测
透析袋
即用型
再生纤维素透析袋
纤维素透析袋
普通型
普通型
透析装置
透析装置
生化试剂
酶和辅酶
酶
辅酶
酶底物
胶原酶
食品和乳品检测用酶和辅酶
诊断试剂用酶和辅酶
蛋白质
植物源蛋白质
动物源蛋白质
蛋白质-重组蛋白
多肽
底物肽
激素肽与神经肽
多肽药物递送
药物肽
β淀粉样肽与微管蛋白肽
抗微生物肽
查看更多
碳水化合物
单糖
二糖
寡糖
多糖
环糊精
纤维素
查看更多
氨基酸
20种天然氨基酸
FMOC保护氨基酸
BOC保护氨基酸
CBZ保护氨基酸
维生素
维生素
抗生素
抗生素
色素类
染料
指示剂
分离试剂
离子交换树脂
大孔吸附树脂
凝胶过滤填料
亲和层析填料
疏水层析填料
缓冲剂
缓冲剂
动物激素
动物激素
表面活性剂
阳离子表面活性剂
阴离子表面活性剂
非离子表面活性剂
两性离子表面活性剂
聚合物类
聚乙二醇(PEG)系列
聚乙二醇(PEG)衍生物
多聚氨基酸系列
聚乙烯吡咯烷酮(PVP)
聚丙烯酸
葡聚糖T系列
查看更多
脂肪酸系列
短链脂肪酸
中链脂肪酸
长链脂肪酸
反式脂肪酸
磷脂类
血制品
全血
红细胞
血制品-血清
血浆
溶血活性实验
其他生化试剂
其他生化试剂
抗体
抗体类
标准品
中药标准品
黄酮及类黄酮
生物碱
萜类及其衍生物
甾体及甾体皂苷类
苯丙素类
花青素类
查看更多
化学标准品
化学标准品
对照药材
对照药材
标准溶液
分析滴定液
仪器校准溶液
混合标准溶液
其他标准溶液
同位素标准品
氢标记
碳标记
氮标记
氧标记
混合标记
其它
有证标准物质
溯源标准品
溯源标准品
食品检测
农残标品
兽残标品
抗氧化剂
食品检测-防腐剂
食品检测-着色剂
护色剂
查看更多
药品检测
化药检测
中药及中成药检测
环境检测
大气
土质、土壤
水质
固废
化妆品检测
增白剂
化妆品检测激素
化妆品检测防腐剂
防晒剂
化妆品检测着色剂
饲料检测
饲料检测-真菌毒素
饲料检测-激素
饲料检测-维生素
饲料检测-脂肪酸
农残
饲料检测-抗生素
小分子化合物
小分子化合物溶液
小分子化合物溶液
信号通路
代谢
G蛋白偶联受体
神经科学
细胞凋亡
表观遗传
蛋白酪氨酸激酶
查看更多
化合物库
抑制剂库
激酶抑制剂库
FDA批准的药物库
天然产物库
生物活性化合物库
酪氨酸激酶抑制剂库
查看更多
靶点筛选
靶点筛选
蛋白&免疫
重组蛋白
重组蛋白-重组蛋白
蛋白提取和纯化
蛋白提取和纯化-裂解液
蛋白提取试剂盒
蛋白检测
蛋白定量
蛋白定性
蛋白检测-蛋白染色
蛋白电泳&Western blot
WB-裂解液
蛋白Marker
凝胶制备试剂盒
蛋白上样缓冲液
WB-电泳缓冲液
封闭液
查看更多
免疫检测
免疫检测
免疫组化
组织制备
抗原修复液
组织封闭
抗体稀释
显色与复染
特异性染色
查看更多
免疫其他相关试剂
免疫其他相关试剂
蛋白其他相关试剂
蛋白其他相关试剂
细胞生物学
感受态细胞
表达感受态细胞
克隆感受态细胞
酵母感受态细胞
发根农杆菌感受态细胞
根癌农杆菌感受态细胞
其他感受态细胞
细胞培养
基础培养基
无血清培养基
平衡盐溶液
细胞培养-血清
细胞生长因子
污染物清除剂
查看更多
细胞分离
细胞裂解
分离液
免疫磁珠
酶抑制剂
细胞检测
细胞检测-细胞染色
细胞增殖与分化
细胞凋亡与自噬
细胞转染
细胞转染
抗生素溶液
抗生素溶液
其它细胞相关
其它细胞相关
分子生物学
核酸提取和纯化
核酸提取和纯化-裂解液
提取试剂盒
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表儿茶素
表儿茶素
分析标准品,含量99.4%,可溯源
Epicatechin (EC)
质检下载
SDS
品牌:
源叶
产品编号:
A10044
一键复制产品信息
A10044
CAS号:
490-46-0
分子式:
C
1
5
H
1
4
O
6
分子量:
290.27
MDL:
MFCD00075648
×
表儿茶素 分析标准品,含量99.4%,可溯源
货号
规格
价格
上海
北京
珠海
重庆
武汉
购买数量
A10044-20mg
促销
分析标准品,含量99.4%,可溯源
¥380.00
¥300.00
A10044-20mg ¥300.00 现货
1174
5
>10
2
3
-
-
-
+
产品介绍
参考文献(208篇)
质检证书(COA)
摩尔浓度计算器
相关产品
产品介绍
SMILES:
O[C@H]1[C@@H](C2=CC=C(O)C(O)=C2)OC3=C(C(O)=CC(O)=C3)C1
熔点:
240°C
沸点:
630.4°C at 760 mmHg
比旋光度:
-55~-65゜(D/20°C)(c=1,CH3OH)
外观:
白色粉末
溶解性:
可溶于热甲醇、DMSO等溶剂,不溶于石油醚、氯仿。
储存条件:
2-8℃
密度:
1.593
注意:
部分产品我司仅能提供部分信息,我司不保证所提供信息的权威性,仅供客户参考交流研究之用。
参考文献(208篇)
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103. [IF=3.2] Haonan Zhang et al."A comprehensive profiling of phenolic compounds and antioxidant activities of 24 varieties of red raspberry cultivated in Northeast China."JOURNAL OF FOOD SCIENCE.2024 Dec;90(1):e17623
102. [IF=7] Lunfang Huang et al."The processing of shaking and standing improves the taste quality of summer black tea."FOOD RESEARCH INTERNATIONAL.2024 Dec;:115545
101. [IF=2.7] Xuechao Zheng et al."Effects of temperature and humidity on drying kinetics, final quality and cell wall pectin content of wolfberry (Lycium barbarum)."DRYING TECHNOLOGY.
100. [IF=4.8] Xin Sun et al."Investigation of virtual screening, inhibition mechanisms of endogenous serine protease inhibitors, and its preservation effects on tilapia."Food Bioscience.2025 Feb;64:105997
99. [IF=4.8] Shiqi Li et al."Enhancing antioxidant activity and functional benefits of kiwi ice wine via freeze concentration techniques and apple pomace freeze-dried powder."Food Bioscience.2025 Feb;64:106006
98. [IF=8.5] Min Yan et al."Metabolic profiling of abdominal subcutaneous adipose tissue reveals effects of apple polyphenols for reversing high-fat diet induced obesity in C57BL/6 J mice."FOOD CHEMISTRY.2025 May;473:143055
97. [IF=6] Huimin Wu et al."Dynamic changes of quality characteristics during fermentation of orange-fleshed sweet potato alcoholic beverage."LWT-FOOD SCIENCE AND TECHNOLOGY.2025 Feb;218:117509
96. [IF=4.1] Majida AL-Wraikat et al."Microbial community and organic compounds composition analysis and the edible security of common buckwheat fermented via Kombucha consortium."Food Chemistry: Molecular Sciences.2025 Feb;:100247
95. [IF=4.7] Delai Yang et al."Natural Copper Ion Scavenger: Investigation of the Hepatoprotective Effects of Green Tea Extract in Toxic-Milk Mice with Wilson’s Disease Model."Foods.2025 Jan;14(4):679
94. [IF=6.5] De Zhou et al."Quality analysis and characteristic difference identification of organic tea and conventional planting tea based on ICP, HPLC and machine algorithm."Food Chemistry-X.2025 Feb;:102299
93. [IF=8.5] Lu Li et al."Non-volatile metabolite and in vitro bioactivity differences in green, white, and black teas."FOOD CHEMISTRY.2025 Jun;477:143580
92. [IF=4.7] Jiayi Xu et al."Characteristic Changes and Potential Markers of Flavour in Raw Pu-Erh Tea with Different Ageing Cycles Analysed by HPLC, HS-SPME-GC-MS, and OAV."Foods.2025 Feb;14(5):829
91. [IF=4] Deqing Wang et al."Penetrating microwave vacuum drying: a superior alternative to traditional drying methods for enhancing sensory quality, biological activity and flavor of ‘Akizuki’ pear (Pyrus pyrifolia Nakai)."JOURNAL OF FOOD COMPOSITION AND ANALYSIS.
90. [IF=5.7] Tianyu Luo et al."Tea Extracellular Vesicle-Derived MicroRNAs Contribute to Alleviate Intestinal Inflammation by Reprogramming Macrophages."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2025;XXXX(XXX):XXX-XXX
89. [IF=7] Zixi Yang et al."Investigation of the classification criteria and flavor compounds in diversified commercially ripened Pu-erh teas."FOOD RESEARCH INTERNATIONAL.2025 Mar;:116198
88. [IF=6.2] Bingsong Ma et al."Revealing the formation of aged aroma in raw Pu-erh tea during the storage through comprehensive two-dimensional gas chromatography coupled to time-of-flight mass spectrometry and molecular docking."Current Research in Food Science.2025
87. [IF=3.9] Shangyun Li et al."Comprehensive analysis and evaluation of the intrinsic fruit quality of Sichuan pear germplasm resources in China."SCIENTIA HORTICULTURAE.2025 Mar;343:114084
86. [IF=6.5] Zixi Yang et al."Unraveling the flavor formation process of mellow and thick-type ripened Pu-erh tea through non-targeted metabolomics and metagenomics."Food Chemistry-X.2025 Mar;:102424
85. [IF=7.7] Youshudi Xie et al."Identification and characterization of two hydrolase genes involved in the hydrolysis of galloylated catechin in the tea plant Camellia sinensis."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2025 May;308:142620
84. [IF=6.5] Cunqiang Ma et al."Grade identification of ripened Pu-erh teas, and their differences of phenolic components, in vitro antioxidant capacity and hypoglycemic effect."Food Chemistry-X.2025 Apr;:102421
83. [IF=6.5] Yong Luo et al."The distribution of catechins and their derivatives among 114 Camellia plants and their correlation in different species and tea-processing suitability."Food Chemistry-X.2025 Apr;27:102461
82. [IF=8.5] Qi Chen et al."Trapping phenylacetaldehyde by litchi shell polyphenols and their characteristic catechins in chemical model and roast pork patty: Identification of catechins-adducts and toxicity assessment."FOOD CHEMISTRY.2025 Apr;:144357
81. [IF=7] Guangshan Zhao et al."Tea drinking effectively improves symptoms of diabetes and prevents hepatorenal damage in mice."FOOD RESEARCH INTERNATIONAL.2025 Apr;:116502
80. [IF=6.5] Jingzhe Li et al."Exploring seasonal differences in taste and nonvolatiles of Lu'an Guapian tea and perceptual interactions between odorants and EGCG via multi-sensory analysis and metabolomics."Food Chemistry-X.2025 Apr;:102497
79. [IF=2.7] De-Huan Yang et al."Classification of Lu'an Gua Pian tea before and after Qingming Festival using HPLC-DAD analysis: A comparison for different data analysis strategy."Analytical Methods.2025 Apr;:
78. [IF=4.2] Langhua Zhou et al."Antioxidant and Anticancer Mechanisms of Unique Polyphenols in Camellia ptilophylla: Focus on Gallocatechin-3,5-di-O-gallate and 1,2,4,6-Tetra-O-galloyl-β-D-glucopyranose."MOLECULES.2025 Apr;30(9):1919
77. [IF=4.7] Rui Wu et al."Chemical, Sensory Variations in Black Teas from Six Tea Cultivars in Jingshan, China."Foods.2025 Jan;14(9):1558
76. [IF=5.6] Qin Ma et al."Exogenous methyl jasmonate induces CHS and promotes flavonoid accumulation in Zanthoxylum bungeanum."INDUSTRIAL CROPS AND PRODUCTS.2024 Dec;222:119682
75. [IF=4.2] Yunyi Hu et al."Ultrasonic-Assisted Extraction of Phenolic Compounds from Lonicera similis Flowers at Three Harvest Periods: Comparison of Composition, Characterization, and Antioxidant Activity."MOLECULES.2024 Jan;29(14):3280
74. [IF=4.7] Wanyu Dong et al."Evaluation of Pre-Harvest Nutrient Composition and Functional Active Substances in Various Lotus Roots."Foods.2024 Jul; 13(14): 2297
73. [IF=5.7] Jiahao Chen et al."Dynamic DNA methylation modification in catechins and terpenoids biosynthesis during tea plant (Camellia sinensis) leaf development."Horticultural Plant Journal.2024 Jul;:
72. [IF=7] Xuyang Liu et al."LC-MS and GC–MS based metabolomics analysis revealed the impact of tea trichomes on the chemical and flavor characteristics of white tea."FOOD RESEARCH INTERNATIONAL.2024 Sep;191:114740
71. [IF=7.7] Ziteng Wang et al."PCL/Locust bean gum nanofibers loaded with HP-β-CD/Epicatechin clathrate compounds for fruit packaging."INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES.2024 Sep;276:133940
70. [IF=8.5] Guojian Deng et al."Mechanism of key volatiles in osmanthus scented green tea on the improvement of its aroma and taste quality."FOOD CHEMISTRY.2024 Dec;460:140560
69. [IF=2.6] Yin Feilong et al."Peach gum edible coating film delays the browning of postharvest litchi and maintains its quality."JOURNAL OF FOOD SCIENCE AND TECHNOLOGY-MYSORE.2024 Sep;:1-10
68. [IF=4.7] Qian-Ni Yang et al."Characterization, Antioxidant Capacity, and Anti-Inflammatory Activity of Polyphenol-Enriched Extracts Obtained from Unripe, Mature, and Overripe Fruits of Red-Fleshed Kiwifruit Cultivars."Foods.2024 Jan;13(18):2860
67. [IF=4.7] Zhihao Ye et al."Tea’s Characteristic Components Eliminate Acrylamide in the Maillard Model System."Foods.2024 Jan;13(17):2836
66. [IF=6.5] Wen Deng et al."Comparative analysis of phenolic compounds in different thinned unripe kiwifruits and their biological functions."Food Chemistry-X.2024 Dec;24:101815
65. [IF=6.5] Chunyin Qin et al."Chemical profile and in-vitro bioactivities of three types of yellow teas processed from different tenderness of young shoots of Huoshanjinjizhong (Camellia sinensis var. sinensis)."Food Chemistry-X.2024 Dec;24:101809
64. [IF=6.5] Wenjing Huang et al."Effect of tea stems on the quality formation of large-leaf yellow tea: Sensomics and flavoromics approaches."Food Chemistry-X.2024 Dec;24:101794
63. [IF=7] Qianqian Luo et al."Oxidation of tea polyphenols promotes chlorophyll degradation during black tea fermentation."FOOD RESEARCH INTERNATIONAL.2024 Nov;196:115016
62. [IF=8.5] Mingchun Wen et al."Developed metabolomics approach reveals the non-volatile color-contributing metabolites during Keemun congou black tea processing."FOOD CHEMISTRY.2025 Jan;463:141222
61. [IF=9.1] Ting Li et al."Online ligand screening for cytochrome C from herbal medicines through “four-in-one” measurement."PHARMACOLOGICAL RESEARCH.2024 Nov;209:107406
60. [IF=3.3] Lu Wang et al."The variation of acrylamide and 5-hydroxymethylfurfural in tea with different roasting degrees and the effects of tea polyphenols on their formation."JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE.2024 Aug;:
59. [IF=4.8] Zixin Zhao et al."Extraction effects of eight deep eutectic solvents on dianhong black tea: From chemical composition analysis to antioxidant and α-glucosidase inhibitory assessments."Food Bioscience.2024 Oct;61:104923
58. [IF=7] Yao Chen et al."Intelligent identification of picking periods of Lu’an Guapian tea by an indicator displacement colorimetric sensor array combined with machine learning."FOOD RESEARCH INTERNATIONAL.2024 Nov;195:114960
57. [IF=8.5] Nanhuan Huang et al."Improved physicochemical and functional properties of dietary fiber from matcha fermented by Trichoderma viride."FOOD CHEMISTRY.2024 Dec;460:140784
56. [IF=6] Zhe Wang et al."High-throughput screening, “protein–metabolite” interaction, and hypoglycemic effect investigations of α-amylase inhibitors in teas using an affinity selection-mass spectrometry method."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Jul;203:116392
55. [IF=6.5] Yida Wu et al."Investigation of the quality of Lu'an Guapian tea during grain rain period by sensory evaluation, objective quantitative indexes and metabolomics."Food Chemistry-X.2024 Jun;:101595
54. [IF=4.5] Xianyang Zhao et al."Development of UHPLC-Q-Exactive Orbitrap/MS Technique for Determination of Proanthocyanidins (PAs) Monomer Composition Content in Persimmon."Plants-Basel".2024 Jan;13(11):1440
53. [IF=3.9] Xianqiang Chen et al."Study on the formation mechanism of blackening in damaged lotus rhizome epidermis: Effects of polyphenols and iron."JOURNAL OF FOOD SCIENCE".2024 Apr;:
52. [IF=5.4] Sihao Zhang et al."Chang-Kang-Fang alleviates diarrhea predominant irritable bowel syndrome (IBS-D) through inhibiting TLR4/NF-κB/NLRP3 pathway."JOURNAL OF ETHNOPHARMACOLOGY".2024 Apr;:118236
51. [IF=6] Michelle Farrell et al."Microencapsulation of purple tea polyphenols using the vibrating nozzle ionotropic gelation technology: Metabolomics, bioactivity, and application in milky tea."LWT-FOOD SCIENCE AND TECHNOLOGY".2024 Apr;:116099
50. [IF=6.1] Wenfeng Li et al."Chemometric analysis illuminates the relationship among browning, polyphenol degradation, Maillard reaction and flavor variation of 5 jujube fruits during air-impingement jet drying."Food Chemistry-X".2024 Jun;22:101425
49. [IF=6.1] Hanchen Zhou et al."The manufacturing process provides green teas with differentiated nonvolatile profiles and influences the deterioration of flavor during storage at room temperature."Food Chemistry-X".2024 Jun;22:101371
48. [IF=4.7] Ye Yutong et al."Quality analysis and antioxidant activity of different types of tea powder."Food Production Processing and Nutrition".2024 Dec;6(1):1-13
47. [IF=5.2] Pengfei Bi et al."Characterization of the effect of non-Saccharomyces cerevisiaes on the non-volatile constituents and volatile profiles of low-alcoholic pomegranate beverages."Food Bioscience".2024 Jun;59:103870
46. [IF=5.9] Yi Yang et al."Green tea hydroxycinnamoylated catechins extend lifespan and attenuate Aβ-induced paralysis of Caenorhabditis elegans via anti-oxidation and peptides dis-aggregation."INDUSTRIAL CROPS AND PRODUCTS".2024 Jun;212:118390
45. [IF=5.9] Shufang Yang et al."Unraveling the variations and relationships between phytochemical constituents and anti-inflammatory potentials of three Zanthoxylum species through metabolomics and explainable machine learning."INDUSTRIAL CROPS AND PRODUCTS".2024 Jun
44. [IF=7.2] Haixiang Ruan et al."A flavonoid metabolon: cytochrome b5 enhances B-ring trihydroxylated flavan-3-ols synthesis in tea plants."PLANT JOURNAL".2024 Mar;:
43. [IF=3.4] Kou Xingran et al."Citrus Pu-erh tea extract intake before or after lipolysis in simulated digestion reduces the release of free fatty acids."Journal of Food Measurement and Characterization".2024 Feb;:1-12
42. [IF=4.3] Yi Jiang et al."Shading in fruit changes the polyphenol accumulation of pellicle by regulating activity of key enzymes and expression of their gene related polyphenol anabolism of Juglans sigillata Dode."SCIENTIA HORTICULTURAE".2024 Apr;329:113017
41. [IF=4.3] Fan Xinyu et al."A comprehensive investigation on the chemical changes of traditional Chinese medicine with classic processing technology: Polygonum multiflorum under nine cycles of steaming and sunning as a case study."ANALYTICAL AND BIOANALYTICAL CHEMIS
40. [IF=4.3] Xin Guan et al."Variation of taste and odor compounds in tea beverage after microbial fermentation by HPLC–MS, GC×GC–O–MS, GC–MS, and sensory evaluation."JOURNAL OF FOOD COMPOSITION AND ANALYSIS".2024 Apr;128:106075
39. [IF=4.5] Haowei Guo et al."Influence of Various Tea Utensils on Sensory and Chemical Quality of Different Teas."Plants-Basel".2024 Jan;13(5):669
38. [IF=5.2] Yueqi Wang et al."Identification of Key Genes Associated with 1,2,6-Tri-O-galloyl-β-D-glucopyranose Accumulation in Camellia sinensis Based on Transcriptome Sequencing."Foods".2024 Jan;13(3):495
37. [IF=5.7] Zhang Wei et al."Development of a SERS aptasensor for the determination of L-theanine using a noble metal nanoparticle-magnetic nanospheres composite."MICROCHIMICA ACTA".2024 Mar;191(3):1-11
36. [IF=6.1] Qiong Chen et al."In Situ Oral Metabolism Analysis of Astringent Compounds in Tea by Paper Spray Mass Spectrometry, Electrospray Mass Spectrometry, Turbidimetry, and Sensory Evaluation."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY".2024;XXXX(XXX):XXX-XXX
35. [IF=8.8] Qiaochun Chen et al."Effects of seasoning addition and cooking conditions on the formation of free and protein-bound heterocyclic amines and advanced glycation end products in braised lamb."FOOD CHEMISTRY".2024 Feb;:138850
34. [IF=8.8] Shengxiao Su et al."Chemical, sensory and biological variations of black tea under different drying temperatures."FOOD CHEMISTRY".2024 Jul;446:138827
33. [IF=4.3] Linmu Chen et al."The spatiotemporal variations of L-glutamic acid and catechins during the development of etiolated tea leaves in ‘Huangjinye’."SCIENTIA HORTICULTURAE.2024 Mar;328:112888
32. [IF=3.4] Lv Ting-Ting et al."Chemical composition and antioxidant capacity of proanthocyanidins from Chinese quince (Chaenomeles sinensis) fruit at different growth stages."Journal of Food Measurement and Characterization.2024 Jan;:1-13
31. [IF=6] Shimao Fang et al."Ancient tea plants black tea taste determinants and their changes over manufacturing processes."LWT-FOOD SCIENCE AND TECHNOLOGY.2024 Jan;:115750
30. [IF=6.1] Yanfei Huang et al."Biosynthetic Pathway and Bioactivity of Vanillin, a Highly Abundant Metabolite Distributed in the Root Cortex of Tea Plants (Camellia sinensis)."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2024;XXXX(XXX):XXX-XXX
29. [IF=8.1] Ning Yue et al."Imidacloprid triggered changes in strawberry fruits on edible quality and phenolic profiles by applied at two growth stages."FOOD RESEARCH INTERNATIONAL.2024 Mar;179:114031
28. [IF=4.2] Jiangcheng Ye et al."Effects of Fermented Extracts of Wuniuzao Dark Loose Tea on Hepatic Sterol Regulatory Element-Binding Protein Pathway and Gut Microbiota Disorder in Obese Mice."JOURNAL OF NUTRITION.2023 Dec;:
27. [IF=5.4] Zhengquan Feng et al."Bioactives and metabolites of Tetrastigma hemsleyanum root extract alleviate DSS-induced ulcerative colitis by targeting the SYK protein in the B cell receptor signaling pathway."JOURNAL OF ETHNOPHARMACOLOGY.2024 Mar;322:117563
26. [IF=6] Liping Shen et al."A green process for extracting and purifying coconut mesocarp polyphenols."Sustainable Chemistry and Pharmacy.2024 Feb;37:101413
25. [IF=6] Jian Zhu et al."Quantitative analysis of active components in Rhodiola species based on disease module-guided network pharmacology."Arabian Journal of Chemistry.2024 Feb;17:105570
24. [IF=6.1] Shenke Bie et al."The profiles of free, esterified and insoluble-bound phenolics in peach juice after high pressure homogenization and evaluation of their antioxidant capacities, cytoprotective effect, and inhibitory effects on α-glucosidase and dipeptidyl
23. [IF=6.1] Peng Wang et al."Germplasm Resources and Metabolite Marker Screening of High-Flavonoid Tartary Buckwheat (Fagopyrum tataricum)."JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY.2023;XXXX(XXX):XXX-XXX
22. [IF=8.8] Zihao Qiu et al."Comprehensive analysis of fresh tea (Camellia sinensis cv. Lingtou Dancong) leaf quality under different nitrogen fertilization regimes."FOOD CHEMISTRY.2024 May;439:138127
21. [IF=6.5] Feng Zhou et al."Integrated metabolomics and transcriptomic analysis reveals metabolic changes of flavor compounds of Camellia assamica host plant after parasitized by Viscum articulatum."PLANT PHYSIOLOGY AND BIOCHEMISTRY.2023 Dec;205:108157
20. [IF=8.8] Zixuan Xie et al."Mechanism of aroma enhancement methods in accelerating Congou black tea acidification subjected to room temperature storage."FOOD CHEMISTRY.2023 Nov;:137837
19. [IF=8.8] Duoduo Zhang et al."Quality analysis of steamed beef with black tea and the mechanism of action of main active ingredients of black tea on myofibrillar protein."FOOD CHEMISTRY.2023 Nov;:137997
18. [IF=7.1] Shuangjiao Xu et al."From waste to eco-friendly biofilms: Harnessing cottonseed hull proanthocyanidins for sustainable solutions."Environmental Technology & Innovation.2024 Feb;33:103448
17. [IF=4.5] Xiaogang Lei et al."Genome-Wide Association Studies of Biluochun Tea Plant Populations in Dongting Mountain and Comprehensive Identification of Candidate Genes Associated with Core Agronomic Traits by Four Analysis Models."Plants-Basel.2023 Jan;12(21):3719
16. [IF=5] Jian-Chang Jin et al."Widely targeted metabolomics reveals the effect of different raw materials and drying methods on the quality of instant tea."Frontiers in Nutrition.2023; 10: 1236216
15. [IF=6.1] Si TAN et al."Green tea polyphenols improved the physicochemical stability of mango powder during storage."Food Chemistry-X.2023 Dec;20:100941
14. [IF=3.7] Manni Tong et al."Quality Characteristics of White Leaf Tea of ‘Baiye 1’ (Camellia sinensis) in Different Producing Areas."Agronomy-Basel.10.3390/agronomy13102526
13. [IF=5.6] Shengnan Xu et al."Effects of age and tissue of Juniperus sabina L. on its phytochemical characteristics, anti-cholinesterase, antidiabetes, and anti-drug resistant bacteria activities."Frontiers in Plant Science.10.3389/fpls.2023.1174922
12. [IF=6] Tian Li et al."Investigation of microbial succession and volatile compounds dynamics during the fermentation of traditional cereal vinegar in Xinjiang."LWT-FOOD SCIENCE AND TECHNOLOGY.10.1016/j.lwt.2023.115258
11. [IF=8.1] Qiuwen Yu et al."Chemometrics-based investigation of non-volatiles/volatiles flavor of tencha (Camellia sinensis cv. Yabukita, Longjing 43 and Baiye 1)."FOOD RESEARCH INTERNATIONAL.10.1016/j.foodres.2023.113461
10. [IF=3.9] Gang He et al."Tibetan tea reduces obesity brought on by a high-fat diet and modulates gut flora in mice."Food Science & Nutrition.2023 Aug;:
9. [IF=6] Tiehan Li et al."Exploring the mysterious effect of piling fermentation on Pu-erh tea quality formation: Microbial action and moist-heat action."LWT-FOOD SCIENCE AND TECHNOLOGY.2023 Aug;185:115132
8. [IF=4.6] Fengge YANG et al."Deciphering chemical and metabolite profiling of Chang-Kang-Fang by UPLC-Q-TOF-MS/MS and its potential active components identification."Chinese Journal of Natural Medicines.2023 Jun;21:459
7. [IF=5.2] Qinzhang Jiang et al."Profiles of Free and Bound Phenolics and Their Antioxidant Capacity in Rice Bean (Vigna umbellata)."Foods.2023 Jan;12(14):2718
6. [IF=7] Xuechun Zhang et al."Chemical Constituents, Antioxidant, and α-Glucosidase Inhibitory Activities of Different Fermented Gynostemma Pentaphyllum Leaves and Untargeted Metabolomic Measurement of the Metabolite Variation."Antioxidants.2023 Aug;12(8):1505
5. [IF=8] Feng Jia et al."Functional properties and release characteristics of tea polyphenols-loaded gliadin films enforced by cinnamaldehyde."Food Packaging and Shelf Life.2023 Nov;39:101144
4. [IF=8.1] Jingna Yan et al."Sensory-directed isolation and identification of an intense salicin-like bitter compound in infected teas with bird’s eye spot disease."FOOD RESEARCH INTERNATIONAL.2023 Jul;:113272
3. [IF=8.8] Zhouping Fu et al."Analysis of differences in the accumulation of tea compounds under various processing techniques, geographical origins, and harvesting seasons."FOOD CHEMISTRY.2024 Jan;430:137000
2. [IF=5.2] Miao Zhu et al."Effects of Processing Conditions and Simulated Digestion In Vitro on the Antioxidant Activity, Inhibition of Xanthine Oxidase and Bioaccessibility of Epicatechin Gallate."Foods.2023 Jan;12(14):2807
1. [IF=5.2] Zhuanrong Wu et al."Effects of Sun Withering Degree on Black Tea Quality Revealed via Non-Targeted Metabolomics."Foods.2023 Jan;12(12):2430
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